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Fundamentals and Advances in Transverse Thermoelectrics

Fundamentals and Advances in Transverse Thermoelectrics

来源:Arxiv_logoArxiv
英文摘要

Transverse thermoelectric effects interconvert charge and heat currents in orthogonal directions due to the breaking of either time-reversal symmetry or structural symmetry, enabling simple and versatile thermal energy harvesting and solid-state cooling within single materials. In comparison to the complex module structures required for the conventional Seebeck and Peltier effects, the transverse thermoelectric effects provide the complete device structures, potentially resolving the fundamental issue of multi-module degradation of thermoelectric conversion performance. This review article provides an overview of all currently known transverse thermoelectric conversion phenomena and principles, as well as their characteristics, and reclassifies them in a unified manner. The performance of the transverse thermoelectric generator, refrigerator, and active cooler is formulated, showing that thermal boundary conditions play an essential role to discuss their behaviors. Examples of recent application research and material development in transverse thermoelectrics are also introduced, followed by a discussion of future prospects.

Hiroto Adachi、Fuyuki Ando、Takamasa Hirai、Rajkumar Modak、Matthew Grayson、Ken-ichi Uchida

热力工程、热机热工量测、热工自动控制特殊热能、特殊热能机械

Hiroto Adachi,Fuyuki Ando,Takamasa Hirai,Rajkumar Modak,Matthew Grayson,Ken-ichi Uchida.Fundamentals and Advances in Transverse Thermoelectrics[EB/OL].(2025-06-13)[2025-07-20].https://arxiv.org/abs/2506.12319.点此复制

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